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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Harvesting of intact microalgae in single and sequential conditioning steps by chemical and biological based - flocculants: Effect on harvesting efficiency, water recovery and algal cell morphology
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Harvesting of intact microalgae in single and sequential conditioning steps by chemical and biological based - flocculants: Effect on harvesting efficiency, water recovery and algal cell morphology

机译:用化学和生物学絮凝剂收获单次和顺序调节步骤的完整微藻:对收获效率,水回收和藻类细胞形态的影响

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摘要

Quick algae harvesting methodologies relating optimum flocculent dose (D-Opt.), percentage harvesting efficiency (%HE) and percentage water recovery (%W-Recovery) to the in-situ hydrodynamic properties of water-algae systems are presented. Flocculation of three microalgae in single and sequential steps, using chemical (polymer and ferric chloride) and biological (egg shells) flocculants, was studied. Zeta potential and pH analysis were completed to further understand the flocculation mechanism. Polymer at D-Opt. of 7.0 g/kgDS resulted in W-Recovery of 90% and % HE of 96.7%. Lower % HE (92.1), % W-Recovery (79) and noticeable algal cells deformation was observed for ferric chloride at D-Opt. of 7.0 g/kg DS. Bio-flocculant conserved algal structure and resulted in % HE of 96.2 and % W-Recovery of 90 at D-Opt. of 5.4 g/kgDS. Significant % HE of 99.8, % W-Recovery of 99.8%, and up to 95% reduction in D-Opt. were achieved in sequential flocculation. The results established the effectiveness and suitability of sequential/bio-flocculation for algae harvesting.
机译:提出了与水藻体系原位流体动力学性能的最佳絮凝剂(D-OPT。),对水藻系统原位流体动力学性质的百分比收获效率(%HE),收获效率(%HE)和百分比水回收率(%W-恢复)的快速藻类收获方法。研究了使用化学(聚合物和氯化铁)和生物(蛋壳)絮凝剂的单一和顺序步骤中三种微藻的絮凝。完成Zeta电位和pH分析以进一步了解絮凝机制。聚合物在D-opt。 7.0克/ kGDS导致W恢复为90%,%统计为96.7%。在D-opt时观察到较低的物质(92.1),%W恢复(79)和明显的藻类细胞变形。 7.0 g / kg ds。生物絮凝剂保守的藻类结构,并导致96.2的%He,在D-opt中恢复90%。 5.4 g / kgds。重要的%他99.8%,恢复%率为99.8%,D-opt减少高达95%。在连续的絮凝中实现。结果建立了藻类收割的顺序/生物絮凝的有效性和适用性。

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